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通过脱氧底物探究葡萄糖脱氢酶、葡萄糖氧化酶和糖化酶的活性位点相似性。

Active site similarities of glucose dehydrogenase, glucose oxidase, and glucoamylase probed by deoxygenated substrates.

作者信息

Sierks M R, Bock K, Refn S, Svensson B

机构信息

Department of Chemistry, Carlsberg Laboratory, Copenhagen Valby, Denmark.

出版信息

Biochemistry. 1992 Sep 22;31(37):8972-7. doi: 10.1021/bi00152a038.

DOI:10.1021/bi00152a038
PMID:1390684
Abstract

The specificity constants, kcat/KM, were determined for glucose oxidase and glucose dehydrogenase using deoxy-D-glucose derivatives and for glucoamylase using deoxy-D-maltose derivatives as substrates. Transition-state interactions between the substrate intermediates and the enzymes were characterized by the observed kcat/Km values and found to be very similar. The binding energy contributions of individual sugar hydroxyl groups in the enzyme/substrate complexes were calculated using the relationship delta(delta G) = -RT ln [(kcat/KM)deoxy/(kcat/KM)hydroxyl] for the series of analogues. The activity of all three enzymes was found to depend heavily on the 4- and 6-OH groups (4'- and 6'-OH in maltose), where changes in binding energies from 10 to 18 kJ/mol suggested strong hydrogen bonds between the enzymes and these substrate OH groups. The 3-OH (3'-OH in maltose) was involved in weaker interactions, while the 2-OH (2'-OH in maltose) had a very small if any role in transition-state binding. The three enzyme-substrate transition-state interactions were compared using linear free energy relationships (Withers, S. G., & Rupitz, K. (1990) Biochemistry 29, 6405-6409) in which the set of kcat/KM values obtained with substrate analogues for one enzyme is plotted against the corresponding values for a second enzyme. The high linear correlation coefficients (rho) obtained, 0.916, 0.958, and 0.981, indicate significant similarity in transition-state interactions, although the three enzymes lack overall sequence homology.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

使用脱氧-D-葡萄糖衍生物测定了葡萄糖氧化酶和葡萄糖脱氢酶的特异性常数kcat/KM,使用脱氧-D-麦芽糖衍生物作为底物测定了葡糖淀粉酶的特异性常数kcat/KM。底物中间体与酶之间的过渡态相互作用通过观察到的kcat/KM值进行表征,发现非常相似。对于一系列类似物,利用关系δ(δG)=-RT ln[(kcat/KM)脱氧/(kcat/KM)羟基]计算了酶/底物复合物中各个糖羟基的结合能贡献。发现所有三种酶的活性都严重依赖于4-和6-羟基(麦芽糖中的4'-和6'-羟基),结合能变化为10至18 kJ/mol表明酶与这些底物羟基之间存在强氢键。3-羟基(麦芽糖中的3'-羟基)参与较弱的相互作用,而2-羟基(麦芽糖中的2'-羟基)在过渡态结合中即使有作用也非常小。使用线性自由能关系(Withers, S. G., & Rupitz, K. (1990) Biochemistry 29, 6405 - 6409)比较了三种酶-底物过渡态相互作用,其中将一种酶与底物类似物获得的一组kcat/KM值与第二种酶的相应值作图。得到的高线性相关系数(ρ)分别为0.916、0.958和0.981,表明过渡态相互作用存在显著相似性,尽管这三种酶缺乏整体序列同源性。(摘要截短至250字)

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